English

The Velocity Dispersion Function for Quiescent Galaxies in Nine Strong-Lensing Clusters

Astrophysics of Galaxies 2020-10-14 v2 Cosmology and Nongalactic Astrophysics

Abstract

We measure the central stellar velocity dispersion function for quiescent galaxies in a set of nine northern clusters in the redshift range 0.18<z<0.290.18 < z < 0.29 and with strong lensing arcs in Hubble Space Telescope images. The velocity dispersion function links galaxies directly to their dark matter halos. From dense SDSS and MMT/Hectospec spectroscopy we identify 231479231 - 479 spectroscopic members in each cluster. We derive physical properties of cluster members including redshift, Dn4000D_{n}4000, and central stellar velocity dispersion and we include a table of these measurements for 3419 cluster members. We construct the velocity dispersion functions for quiescent galaxies with Dn4000>1.5D_{n}4000 > 1.5 and within R200R_{200}. The cluster velocity dispersion functions all show excesses at σ250kms1\sigma \gtrsim 250 km s^{-1} compared to the field velocity dispersion function. The velocity dispersion function slope at large velocity dispersion (σ>160kms1\sigma > 160 km s^{-1}) is steeper for more massive clusters, consistent with the trend observed for cluster luminosity functions. The spatial distribution of galaxies with large velocity dispersion at radii larger than R200R_{200} further underscores the probable major role of dry mergers in the growth of massive cluster galaxies during cluster assembly.

Keywords

Cite

@article{arxiv.2007.00679,
  title  = {The Velocity Dispersion Function for Quiescent Galaxies in Nine Strong-Lensing Clusters},
  author = {Jubee Sohn and Daniel G. Fabricant and Margaret J. Geller and Ho Seong Hwang and Antonaldo Diaferio},
  journal= {arXiv preprint arXiv:2007.00679},
  year   = {2020}
}

Comments

16 pages, 12 figures, Accepted for publication in the ApJ